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[超声响应性纳米材料在抗炎治疗中的分类与应用]

[Classification and Application of Ultrasound-Responsive Nanomaterials in Anti-Inflammatory Therapy].

作者信息

Xie Lixin, DU Zhefei, Peng Qiuxia, Zhang Kun, Fang Chao

机构信息

( 200072) Department of Medical Ultrasound, Shanghai Tenth People's Hospital, Shanghai 200072, China.

出版信息

Sichuan Da Xue Xue Bao Yi Xue Ban. 2024 Jul 20;55(4):793-799. doi: 10.12182/20240760104.

Abstract

Ultrasound, a high-frequency mechanical wave with excellent tissue penetration, has been widely applied in medical diagnostic imaging. Furthermore, it has been reported that ultrasound has broad prospects for extensive applications in the field of disease treatment in recent years due to its non-invasiveness and high efficiency. Ultrasound-responsive nanomaterials have the unique advantages of a small size and a high reactivity. Such materials have the capability for precision control of drug release under ultrasound stimulation, which provides a new approach to enhancing the efficiency of drug therapy. Therefore, these materials have attracted the attention of a wide range of scholars. Inflammation is a defensive response produced by organisms to deal with injuries. However, excessive inflammatory response may lead to various tissue damages in organisms and even endanger patients' lives. Many studies have demonstrated that limiting the inflammatory response using ultrasound-responsive nanomaterials is a viable way of treating diseases. Currently, there are still challenges in the application of ultrasound-responsive nanomaterials in anti-inflammatory therapy. The design and synthesis process of nanomaterials is complicated, and further verification of the biocompatibility and safety of these materials is needed. Therefore, in this review, we summarized and classified common ultrasound-responsive nanomaterials in the field of anti-inflammation and systematically introduced the properties of different nanomaterials. In addition, the anti-inflammatory applications of ultrasound-responsive nanomaterials in various diseases, such as bone diseases, skin and muscle diseases, autoimmune diseases, and respiratory diseases, are also described in detail. It is expected that this review will provide insights for further research and clinical applications in the realms of precision treatment, targeted drug delivery, and clinical trial validation of ultrasound-responsive nanomaterials used in anti-inflammatory therapies.

摘要

超声波是一种具有出色组织穿透能力的高频机械波,已广泛应用于医学诊断成像。此外,近年来有报道称,由于其无创性和高效性,超声波在疾病治疗领域具有广泛的应用前景。超声响应纳米材料具有尺寸小、反应活性高的独特优势。这类材料能够在超声刺激下精确控制药物释放,为提高药物治疗效率提供了一种新方法。因此,这些材料引起了众多学者的关注。炎症是生物体为应对损伤而产生的一种防御反应。然而,过度的炎症反应可能导致生物体的各种组织损伤,甚至危及患者生命。许多研究表明,使用超声响应纳米材料限制炎症反应是一种可行的疾病治疗方法。目前,超声响应纳米材料在抗炎治疗中的应用仍面临挑战。纳米材料的设计和合成过程复杂,需要进一步验证这些材料的生物相容性和安全性。因此,在本综述中,我们对抗炎领域常见的超声响应纳米材料进行了总结和分类,并系统地介绍了不同纳米材料的特性。此外,还详细描述了超声响应纳米材料在各种疾病中的抗炎应用,如骨疾病、皮肤和肌肉疾病、自身免疫性疾病和呼吸系统疾病。期望本综述能为超声响应纳米材料在抗炎治疗中的精准治疗、靶向给药及临床试验验证等方面的进一步研究和临床应用提供思路。

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